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Synthesis and Observation of Non-Abelian Gauge Fields in Real Space

2019/06/08 by Yi Yang, Chao Peng, Di Zhu +4 · 1 voice · 2 citations
Physics and Astronomy · #physics.optics #cond-mat.mes-hall #cond-mat.quant-gas

paper · pdf · doi:10.1126/science.aay3183

Abstract

Gauge fields, real or synthetic, are crucial for understanding and manipulation of physical systems. The associated geometric phases can be measured, for example, from the Aharonov--Bohm interference. So far, real-space realizations of gauge fields have been limited to Abelian (commutative) ones. Here we report an experimental synthesis of non-Abelian gauge fields in real space and the observation of the non-Abelian Aharonov--Bohm effect with classical waves and classical fluxes. Based on optical mode degeneracy, we break time-reversal symmetry in different manners---via temporal modulation and the Faraday effect---to synthesize tunable non-Abelian gauge fields. The Sagnac interference of two final states, obtained by reversely-ordered path integrals, demonstrates the non-commutativity of the gauge fields. Our work introduces real-space building blocks for non-Abelian gauge fields, relevant for classical and quantum exotic topological phenomena.

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